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首页> 外文期刊>Fisheries Research >Accuracy and precision of hydroacoustic estimates of Gizzard Shad abundance using horizontal beaming
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Accuracy and precision of hydroacoustic estimates of Gizzard Shad abundance using horizontal beaming

机译:使用水平辐射的Gizzard Chad丰富水电声估计的准确性和精度

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Prey-density data are often used when making management decisions for piscivorous fish species (i.e. stocking rates). Gizzard Shad (Dorosoma cepedianum) are an important prey species in lakes and reservoirs throughout much of the United States. Currently, gill nets are the most common gear used to collect Gizzard Shad data used for deriving population characteristics, but this gear can be time and labor intensive, lacks precision, and may lack accuracy. Horizontally-oriented echosounders may be a better alternative, but accuracy and precision must be measured to determine if this sampling technique produces reliable data. We released Gizzard Shad into a net pen (15-m long x 15-m wide x 4.5-m deep with 6.35-mm square mesh) to produce several different densities of fish. Mean densities were estimated using five passes with a Simrad (R) EK60 120 kHz split-beam echosounder. Density estimates were acquired by echo-counting and echo-integration. Mean density estimates were then compared to known densities using a linear mixed-effects model and relative standard error (RSE) was calculated for each trial from the five sampling passes. Both echo-counting and echo-integration had slopes not significantly different from one (t = 0.82, d.f. = 13, P = 0.33; t = 3.58, d.f. = 13, P = 0.55) but intercepts that were significantly greater than zero (t = 2.89, d.f. = 88, P & 0.01; t = 3.53, d.f. = 88, P & 0.01) indicating horizontally-oriented echosounders can accurately detect changes in Gizzard Shad density, but may overestimate actual density, particularly when small. Horizontally-oriented echosounders accurately estimated relative Gizzard Shad density with good sampling precision (i.e., when imaging the same aggregation of fish), indicating data collected with this method would be reliable when making management decisions.
机译:在制定品种鱼类的管理决策时通常使用猛力密度数据(即放养率)。 Gizzard Shad(Dorosoma Cepedianum)是整个美国湖泊和水库的重要猎物。目前,鳃网是最常见的齿轮,用于收集用于导出人口特征的Gizzard Shad数据,但这种装备可以是时间和劳动密集,缺乏精度,可能缺乏准确性。面向水平的回声ouders可能是更好的替代方案,但必须测量准确性和精度以确定该采样技术是否产生可靠的数据。我们将Gizzard Shad释​​放到净笔中(15米长x 15-m宽x 4.5-m深度,与6.35毫米的方形网)产生几种不同的鱼密度。使用五次通过Simrad(R)EK60 120 kHz分离束回波估计均估计平均密度。通过回波计数和回声集成获得密度估计。然后将平均密度估计与使用线性混合效应模型的已知密度进行比较,并且针对来自五个采样通行证的每次试验计算相对标准误差(RSE)。回声计数和回声集成的斜率没有显着不同的斜率(t = 0.82,df = 13,p = 0.33; t = 3.58,df = 13,p = 0.55),但截距显着大于零(t = 2.89,df = 88,p& 0.01; t = 3.53,df = 88,p& 0.01),指示水平取向的回声ouders可以准确地检测Gizzard Chad密度的变化,但可能会高估实际密度,特别是小。以水平为导向的回波器准确地估计了具有良好采样精度的相对g型穴密度(即,当成像鱼的相同聚集时),指示在制定管理决策时采用该方法收集的数据将是可靠的。

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